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Molecular determinants involved in activation of caspase 7

机译:涉及胱天蛋白酶7激活的分子决定簇

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摘要

During apoptosis, initiator caspases (8, 9 and 10) activate downstream executioner caspases (3, 6 and 7) by cleaving the IDC (interdomain connector) at two sites. Here, we demonstrate that both activation sites, site 1 and site 2, of caspase 7 are suboptimal for activation by initiator caspases 8 and 9 in cellulo, and in vitro using recombinant proteins and activation kinetics. Indeed, when both sites are replaced with the preferred motifs recognized by either caspase 8 or 9, we found an up to 36-fold improvement in activation. Moreover, cleavage at site 1 is preferred to site 2 because of its location within the IDC, since swapping sites does not lead to a more efficient activation. We also demonstrate the important role of lle 195 of site 1 involved in maintaining a network of contacts that preserves the proper conformation of the active enzyme. Finally, we show that the length of the IDC plays a crucial role in maintaining the necessity of proteolysis for activation. In fact, although we were unable to generate a caspase 7 that does not require proteolysis for activity, shortening the IDC of the initiator caspase 8 by four residues was sufficient to confer a requirement for proteolysis, a key feature of executioner caspases. Altogether, the results demonstrate the critical role of the primary structure of caspase 7's IDC for its activation and proteolytic activity.
机译:在凋亡过程中,启动子半胱天冬酶(8、9和10)通过在两个位点切割IDC(域间连接器)激活下游执行者半胱天冬酶(3、6和7)。在这里,我们证明了胱天蛋白酶7的两个激活位点,即位点1和位点2,对于由纤维素中的启动子半胱天冬酶8和9激活都是次优的,并且在体外使用重组蛋白和激活动力学。确实,当两个位点都被caspase 8或9识别的优选基序替换时,我们发现激活最多可提高36倍。此外,由于交换位点不会导致更有效的激活,因此,在位点1处进行的切割比在位点2处更可取,因为它在IDC中的位置。我们还证明了站点1的lle 195的重要作用,它涉及维持保持活性酶正确构象的接触网络。最后,我们证明了IDC的长度在维持蛋白水解激活的必要性中起着至关重要的作用。实际上,尽管我们无法生成不需要蛋白水解的caspase 7,但将启动子caspase 8的IDC缩短四个残基就足以实现对蛋白水解的需求,这是死刑犯半胱天冬酶的关键特征。总之,结果证明了胱天蛋白酶7的IDC的一级结构对其活化和蛋白水解活性的关键作用。

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